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生物兼容叶酸强化的 Ag-Ir 量子点纳米酶用于细胞和植物根中半胱氨酸/应激成像以及 Hg 和多巴胺的多通道监测。

Biocompatible Folic-Acid-Strengthened Ag-Ir Quantum Dot Nanozyme for Cell and Plant Root Imaging of Cysteine/Stress and Multichannel Monitoring of Hg and Dopamine.

机构信息

School of Chemistry and Chemical Engineering & Key Laboratory of Catalytic Conversion and Clean Energy in Universities of Shandong Province, Qufu Normal University, Qufu 273165, People's Republic of China.

School of Life Science, Qufu Normal University, Qufu, Shandong 273165, People's Republic of China.

出版信息

Anal Chem. 2024 Mar 12;96(10):4299-4307. doi: 10.1021/acs.analchem.4c00081. Epub 2024 Feb 27.

DOI:10.1021/acs.analchem.4c00081
PMID:38414258
Abstract

To boost the enzyme-like activity, biological compatibility, and antiaggregation effect of noble-metal-based nanozymes, folic-acid-strengthened Ag-Ir quantum dots (FA@Ag-Ir QDs) were developed. Not only did FA@Ag-Ir QDs exhibit excellent synergistic-enhancement peroxidase-like activity, high stability, and low toxicity, but they could also promote the lateral root propagation of . Especially, ultratrace cysteine or Hg could exclusively strengthen or deteriorate the inherent fluorescence property with an obvious "turn-on" or "turn-off" effect, and dopamine could alter the peroxidase-like activity with a clear hypochromic effect from blue to colorless. Under optimized conditions, FA@Ag-Ir QDs were successfully applied for the turn-on fluorescence imaging of cysteine or the stress response in cells and plant roots, the turn-off fluorescence monitoring of toxic Hg, or the visual detection of dopamine in aqueous, beverage, serum, or medical samples with low detection limits and satisfactory recoveries. The selective recognition mechanisms for FA@Ag-Ir QDs toward cysteine, Hg, and dopamine were illustrated. This work will offer insights into constructing some efficient nanozyme sensors for multichannel environmental analyses, especially for the prediagnosis of cysteine-related diseases or stress responses in organisms.

摘要

为了提高基于贵金属的纳米酶的酶样活性、生物相容性和抗聚集效应,开发了叶酸增强的 Ag-Ir 量子点(FA@Ag-Ir QDs)。FA@Ag-Ir QDs 不仅表现出优异的协同增强过氧化物酶样活性、高稳定性和低毒性,而且还可以促进. 的侧根繁殖。特别是,痕量半胱氨酸或 Hg 可以分别增强或恶化固有荧光性质,具有明显的“开启”或“关闭”效应,而多巴胺可以通过从蓝色到无色的明显减色效应改变过氧化物酶样活性。在优化条件下,FA@Ag-Ir QDs 成功应用于半胱氨酸的开启荧光成像或细胞和植物根中的应激反应、有毒 Hg 的关闭荧光监测,或在水、饮料、血清或医学样本中对多巴胺的可视化检测,具有低检测限和令人满意的回收率。阐述了 FA@Ag-Ir QDs 对半胱氨酸、Hg 和多巴胺的选择性识别机制。这项工作将为构建一些用于多通道环境分析的高效纳米酶传感器提供思路,特别是用于与半胱氨酸相关的疾病或生物体应激反应的早期诊断。

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